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Computer Simulations of Quartz (101)-Water Interface over a Range of pH Values

机译:在一系列pH值范围内Quartz(101)-water界面的计算机模拟

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摘要

The original force field for clay materials. (ClayFF) developed by Cygan et al. (J. Phys. Chem. B 2004, 108, 1255) is modified to describe negative charging of the (101) quartz surface above its point of zero charge (pH 2.0-4.5). The modified force field adopts the scaled natural bond orbital charges derived by the quantum mechanical calculations which are used to obtain the desired surface charge density and to determine the delocalization of the charge after deprotonation of surface silanol groups. Classical molecular dynamics simulations (CMD) of the (101) surface of alpha-quartz with different surface charge densities (6, -0.03, -0.06 and -0.12 Cm-2) are performed to evaluate the influence of the negative surface charge on interfacial water and adsorption of Na+, Rb+, and Sr2+ ions. The CMD results are compared with ab initio calculations, X-ray experiment, and the triple-layer model. The modified force field can be easily implemented in common molecular dynamics packages and used for simulations of interactions between quartz surfaces and Various (bio)molecules over a wide range of pH values.
机译:粘土材料的原始力场。 (clayff)由Cygan等人开发。 (J. physco.Chem.B 2004,108,1255)被修改为描述(101)石英表面上方的负荷(pH 2.0-4.5)。改性力场采用由量子力学计算得出的缩放的天然键轨道电荷,该电荷用于获得所需的表面电荷密度并确定表面硅烷醇基组的去质子后电荷的截匙。进行具有不同表面电荷密度(6,-0.03,-0.06和-0.12cm-2)的α-石英的(101)表面的经典分子动力学模拟(CMD),以评估负面电荷对界面的影响Na +,Rb +和Sr2 +离子的水和吸附。将CMD结果与AB Initio计算进行比较,X射线实验和三层模型进行比较。改性力场可以容易地在共同的分子动力学包装中实现,并且用于在各种pH值中模拟石英表面和各种(Bio)分子之间的相互作用。

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